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用于持续根管消毒的具有负载响应抗菌性能的可注射导电聚氨酯凝胶

Injectable and Conductive Polyurethane Gel with Load-Responsive Antibiosis for Sustained Root Canal Disinfection.

作者信息

Mu Bo, Lei Xiaoyu, Zhang Yinglong, Zhang Jingzheng, Du Qingda, Li Yuping, Huang Dongyu, Wang Li, Li Jidong, Li Yubao, Zuo Yi

机构信息

Research Center for Nano Biomaterials, Analytical & Testing Center, Sichuan University, Chengdu 610064, China.

School of Big Health and Intelligent Engineering, Chengdu Medical College, Chengdu 610500, China.

出版信息

Gels. 2025 May 7;11(5):346. doi: 10.3390/gels11050346.

Abstract

To address the limitations of conventional antibacterial therapies, we developed an injectable, conductive polyurethane-based composite gel system for sustained root canal disinfection. This gel incorporates piezoelectric nanoparticles (n-BaTiO) and conductive segments (aniline trimer, AT) within a polyurethane matrix, which synergistically interact with a static antimicrobial agent (n-ZnO) to achieve dynamic, mechano-responsive antibacterial activity. Under cyclic compression (simulating mastication), the piezoelectric gels exhibited enhanced electroactivity via the mechano-electric coupling effect, generating 2-fold higher voltage and a 1.8-1.9× increase in current compared to non-piezoelectric controls. The dynamic electroactivity of the gels enabled superior long-term performance, achieving 92-97% biofilm eradication, significantly higher than the static n-ZnO-only gel (88%). XPS and UV-vis spectroscopy analyses confirmed mechano-electrochemically amplified reactive oxygen species (ROS) generation, which contributed to improved biofilm disruption. The ISO-compliant gel provides durable, load-responsive disinfection while maintaining good biocompatibility, offering a promising solution to prevent post-treatment reinfection.

摘要

为了解决传统抗菌疗法的局限性,我们开发了一种用于根管持续消毒的可注射、基于导电聚氨酯的复合凝胶系统。这种凝胶在聚氨酯基质中掺入了压电纳米颗粒(n-BaTiO)和导电链段(苯胺三聚体,AT),它们与一种静态抗菌剂(n-ZnO)协同相互作用,以实现动态、机械响应性抗菌活性。在循环压缩(模拟咀嚼)下,压电凝胶通过机电耦合效应表现出增强的电活性,与非压电对照相比,产生的电压高出2倍,电流增加1.8 - 1.9倍。凝胶的动态电活性实现了卓越的长期性能,实现了92 - 97%的生物膜根除率,显著高于仅含静态n-ZnO的凝胶(88%)。X射线光电子能谱和紫外可见光谱分析证实了机械电化学放大的活性氧(ROS)生成,这有助于改善生物膜破坏。符合ISO标准的凝胶在保持良好生物相容性的同时提供持久的、负载响应性消毒,为防止治疗后再感染提供了一种有前景的解决方案。

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